食品科学

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小分子化合物开放夹心免疫分析研究进展

饶美芳,伍伟健,许 超,毛小晓,徐振林,王 弘*,雷红涛,孙远明   

  1. 华南农业大学食品学院,广东省食品质量安全重点实验室,广东 广州 510642
  • 出版日期:2016-04-15 发布日期:2016-04-13

Progress in Noncompetitive Detection of Small Molecules by Open Sandwich Immunoassay

RAO Meifang, WU Weijian, XU Chao, MAO Xiaoxiao, XU Zhenlin, WANG Hong*, LEI Hongtao, SUN Yuanming   

  1. Guangdong Provincial Key Laboratory of Food Safety and Quality, College of Food Science, South China Agricultural University, Guangzhou 510642, China
  • Online:2016-04-15 Published:2016-04-13

摘要:

基于抗原-抗体识别的免疫分析技术在小分子监测领域占有重要地位,已成功应用于生理活性物质、化学有害物、农兽药等的快速检测,在临床诊断、环境、食品以及卫生领域发挥重要作用。由于缺乏结合位点,小分子化合物的分析大多采用竞争模式,与传统的三明治夹心法相比,稳定性和灵敏度往往都难以满足实际检测需求。近几年来,科学家开始尝试建立针对小分子化合物的非竞争模式免疫分析方法,比如基于抗独特型抗体、基于抗体可变区片段、基于抗异型抗体及抗免疫复合物多肽。其中基于抗体重链和轻链结合的开放夹心免疫分析由于具有只需要单个抗体、快速非竞争的均相检测小分子等优点,备受研究者关注。本文主要综述基于抗体可变区片段的小分子非竞争免疫分析方法,重点介绍了建立小分子非竞争检测模式所需要抗体可变区的获得及筛选途径、几种形式信号放大载体的研究现状,最后对其在小分子物质检测领域的应用前景进行了评述,期望能为本领域研究提供借鉴。

关键词: 小分子化合物, 非竞争式, 开放夹心免疫分析方法

Abstract:

Sensitive and quantitative determination of low molecular weight molecules is a major analytical task in
biomedical, food and environmental fields. Although sandwich ELISA exhibits high specificity and sensitivity, it takes
a long time and involves multiple incubation/washing steps. Moreover, the conventional sandwich immunoassay is not
suitable to detect small molecules because of the lack of two discrete binding sites. Recently, open-sandwich immunoassay
(OS-ELISA), phage anti-immune complex assay and idiotype-anti-idiotype reactions have been developed for the
noncompetitive detection of haptens. However, OS-ELISA, based on antigen-dependent stabilization of antibody variable
region to quantify various antigens, allows noncompetitive detection of small molecules with the applicability to a
homogeneous assay, requires only a single antibody recognizing one epitope and simple instrumentation and suitable for full
automation. In this paper, therefore, the principle, established methods, and signal amplification of this immunoassay are
reviewed. The potential application of open sandwich immunoassay for detecting small molecules is also discussed.

Key words: small molecules, noncompetitive detection, open sandwich immunoassay

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